First-principles energetics of water clusters and ice: a many-body analysis.

نویسندگان

  • M J Gillan
  • D Alfè
  • A P Bartók
  • G Csányi
چکیده

Standard forms of density-functional theory (DFT) have good predictive power for many materials, but are not yet fully satisfactory for cluster, solid, and liquid forms of water. Recent work has stressed the importance of DFT errors in describing dispersion, but we note that errors in other parts of the energy may also contribute. We obtain information about the nature of DFT errors by using a many-body separation of the total energy into its 1-body, 2-body, and beyond-2-body components to analyze the deficiencies of the popular PBE and BLYP approximations for the energetics of water clusters and ice structures. The errors of these approximations are computed by using accurate benchmark energies from the coupled-cluster technique of molecular quantum chemistry and from quantum Monte Carlo calculations. The systems studied are isomers of the water hexamer cluster, the crystal structures Ih, II, XV, and VIII of ice, and two clusters extracted from ice VIII. For the binding energies of these systems, we use the machine-learning technique of Gaussian Approximation Potentials to correct successively for 1-body and 2-body errors of the DFT approximations. We find that even after correction for these errors, substantial beyond-2-body errors remain. The characteristics of the 2-body and beyond-2-body errors of PBE are completely different from those of BLYP, but the errors of both approximations disfavor the close approach of non-hydrogen-bonded monomers. We note the possible relevance of our findings to the understanding of liquid water.

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

Assessing the accuracy of quantum Monte Carlo and density functional theory for energetics of small water clusters.

We present a detailed study of the energetics of water clusters (H(2)O)(n) with n ≤ 6, comparing diffusion Monte Carlo (DMC) and approximate density functional theory (DFT) with well converged coupled-cluster benchmarks. We use the many-body decomposition of the total energy to classify the errors of DMC and DFT into 1-body, 2-body and beyond-2-body components. Using both equilibrium cluster co...

متن کامل

Computational Study of Proton Ordering in Ice and Icelike Systems

Recently, there has been a lot of interest to computationally study ice and icelike systems. Simulating such structures, using ab initio methods require atomic level models. However, creating adequate models for ice is challenging, as there are a huge number of isomers for any ice formation. Two factors contribute to the number of isomers: (i) the positions of oxygens that give rise to various ...

متن کامل

First Principles Studies of Water and Ice on Oxide Surfaces

The interaction of water (and ice) with oxide surfaces has been studied with first principles density functional theory. To begin, an extensive series of studies on the clay mineral kaolinite (Al2Si2O5(OH)4) are reported with a view to understanding the efficacy of kaolinite as a heterogeneous ice nucleating agent. The main conclusions are: (i) water clustering is disfavoured on the kaolinite s...

متن کامل

Toward a Comprehensive Model of Snow Crystal Growth: 3. The Correspondence Between Ice Growth from Water Vapor and Ice Growth from Liquid Water

We examine ice crystal growth from water vapor at temperatures near the melting point, when surface premelting creates a quasiliquid layer at the solid/vapor interface. Recent ice growth measurements as a function of vapor supersaturation have demonstrated a substantial nucleation barrier on the basal surface at these temperatures, from which a molecular step energy can be extracted using class...

متن کامل

بررسی آلودگی کلی فرم در فرایند تولید یخ کارخانجات یخ سازی شهرستان کرمان

Background: Pathogene transmission by ice, which has been attended for many years, is as important as its transmission by water. Ice infection is caused by using water distribution and translocation methods. The aim of this study is to evaluate microbial infections (Choliform variants) in ice making procedure at ice manufacturing houses in Kerman Province cities. Materials and Methods: This...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:
  • The Journal of chemical physics

دوره 139 24  شماره 

صفحات  -

تاریخ انتشار 2013